296
where m is the weight of complex in g, z is the number of participating electrons, F is Faradaic constant 96,485 C/mol, and M
is the molecular mass of complex in g/mol.
Acknowledgments
Czech Science Foundation (project no. 19-03160S) is
acknowledged.
This work has been co-financed by the European Union and
Greek national funds through the program “Support for
Researchers with Emphasis on Young Researchers” (call code:
EDBM34, ΚΕ 14995) and under the research title “Preparation
and study of innovative forms of administration of pharmaceutical
molecules targeting at improved pharmacological properties.”
Fig. 4 Gas chromatogram of solution after the oxidative electrolysis of quercetin in the presence (A) and
absence (B) of β-CD. Quercetin and intermediates of oxidation were stabilized in cyclodextrin cavity while the
solution of free quercetin was completely oxidized
Romana Sokolová and Ilaria Degano
where m is the weight of complex in g, z is the number of participating electrons, F is Faradaic constant 96,485 C/mol, and M
is the molecular mass of complex in g/mol.
Acknowledgments
Czech Science Foundation (project no. 19-03160S) is
acknowledged.
This work has been co-financed by the European Union and
Greek national funds through the program “Support for
Researchers with Emphasis on Young Researchers” (call code:
EDBM34, ΚΕ 14995) and under the research title “Preparation
and study of innovative forms of administration of pharmaceutical
molecules targeting at improved pharmacological properties.”
Fig. 4 Gas chromatogram of solution after the oxidative electrolysis of quercetin in the presence (A) and
absence (B) of β-CD. Quercetin and intermediates of oxidation were stabilized in cyclodextrin cavity while the
solution of free quercetin was completely oxidized
Romana Sokolová and Ilaria Degano
